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Modelling Phosphorus Inputs From Agricultural Sources And Urban Areas In River Basins

机译:流域农业来源和城市地区磷输入模型

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摘要

An area-differentiated model approach (ME-Phos) for the quantification of mean annual P-inputs from point and diffuse sources is presented. The following pathways are considered: artificial drainage, wash-off, groundwater outflow, soil erosion, rainwater sewers, combined sewer overflows, municipal waste water treatment plants and industrial effluents. Two retention functions for rivers and reservoirs are included in order to model P-sinks within a river basin. This allows a complete record of P-loads in heterogeneous meso- and macroscale river basins and enables validation of modeling results with water quality data on a load basis. The model is applied to the River Ruhr basin (4,485 km~2) in Germany, which includes contrasting natural conditions, land use patterns as well as population and industry densities. Based on validated modelling results sub-areas of high P-loads are localized and management options for the reduction of P-inputs to surface waters are proposed taking into account the site conditions of the sub-areas relevant for high P-inputs into surface waters.
机译:提出了一种用于区分点源和扩散源的年均P输入量的区域差分模型方法(ME-Phos)。考虑以下途径:人工排水,冲刷,地下水流出,水土流失,雨水排污,下水道综合溢流,市政废水处理厂和工业废水。为了对流域内的P汇建模,包括了对河流和水库的两个保留函数。这样可以完整记录非均质中尺度和大型河流流域中的P负荷,并可以验证基于负荷的水质数据的建模结果。该模型应用于德国的鲁尔河盆地(4,485 km〜2),其中包括自然条件,土地利用方式以及人口和工业密度的对比。基于经过验证的建模结果,对高P负荷子区域进行了局部定位,并考虑到与高P负荷地表水有关的子区域的现场条件,提出了减少P地表水输入的管理方案。 。

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